...
首页> 外文期刊>Energy Science & Engineering >Pilot‐scale processing with alkaline pulping and enzymatic saccharification for bioethanol production from rice straw
【24h】

Pilot‐scale processing with alkaline pulping and enzymatic saccharification for bioethanol production from rice straw

机译:碱性制浆和酶促糖化的中试工艺,用于稻草生产生物乙醇

获取原文
           

摘要

AbstractWe examined pilot-scale bioethanol production from rice straw using sodium carbonate pulping as the alkaline pulping method and enzymatic saccharification. The yield of prewashed rice straw after the crushing and prewashing stage decreased with an increase in the input in rice straw. The pulp yield after alkaline cooking was 66–68% at kappa number ranging from 32 to 36, which was comparatively higher than the laboratory-scale study. The yield of enzymatic saccharized glucose was decreased with the increase in washed pulp and its saccharification rate was approximately 20%. We successfully produced approximately 100 liters of 95% ethanol from 1000 Bone-Dry kg (BDkg) rice straw. The results of our pilot-scale study indicated that the relationship between resource input and product yield for each operation exhibited exponential or logarithmic curves, rather than linear decreases or increases, which could suggest a high-cost structure for bioethanol production when the resource input is larger. However, we established an optimum quantity of resource input, approximately 2000–3000 BDkg in our pilot-scale study, for higher efficiencies.
机译:摘要我们研究了使用碳酸钠制浆作为碱性制浆方法和酶促糖化从稻草生产中试规模的生物乙醇。破碎和预洗阶段后,预洗稻草的产量随稻草投入量的增加而降低。碱蒸煮后的纸浆产率在Kappa数为32至36的范围内为66-68%,相对高于实验室规模的研究。酶法糖化葡萄糖的产量随洗涤纸浆的增加而降低,其糖化率约为20%。我们从1000公斤干稻米(BDkg)稻草中成功生产了约100升95%的乙醇。我们的中试研究结果表明,每种操作的资源投入与产品产量之间的关系表现出指数或对数曲线,而不是线性的下降或增加,这可能表明当资源投入为时,生物乙醇生产的成本较高更大。但是,我们在试点规模研究中确定了最佳的资源投入量,大约为2000–3000 BDkg,以提高效率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号